The Arabidopsis cytochrome P450 enzyme CYP96A4 is involved in the wound‐induced biosynthesis of cuticular wax and cutin monomers

角质 拟南芥 生物合成 生物化学 化学 表皮(毛发) 植物角质层 生物 基因 遗传学 突变体
作者
Haodong Huang,Yang Wang,Pingfang Yang,Huayan Zhao,Matthew A. Jenks,Shiyou Lü,Xianpeng Yang
出处
期刊:Plant Journal [Wiley]
卷期号:118 (5): 1619-1634 被引量:6
标识
DOI:10.1111/tpj.16701
摘要

The plant cuticle is composed of cuticular wax and cutin polymers and plays an essential role in plant tolerance to diverse abiotic and biotic stresses. Several stresses, including water deficit and salinity, regulate the synthesis of cuticular wax and cutin monomers. However, the effect of wounding on wax and cutin monomer production and the associated molecular mechanisms remain unclear. In this study, we determined that the accumulation of wax and cutin monomers in Arabidopsis leaves is positively regulated by wounding primarily through the jasmonic acid (JA) signaling pathway. Moreover, we observed that a wound- and JA-responsive gene (CYP96A4) encoding an ER-localized cytochrome P450 enzyme was highly expressed in leaves. Further analyses indicated that wound-induced wax and cutin monomer production was severely inhibited in the cyp96a4 mutant. Furthermore, CYP96A4 interacted with CER1 and CER3, the core enzymes in the alkane-forming pathway associated with wax biosynthesis, and modulated CER3 activity to influence aldehyde production in wax synthesis. In addition, transcripts of MYC2 and JAZ1, key genes in JA signaling pathway, were significantly reduced in cyp96a4 mutant. Collectively, these findings demonstrate that CYP96A4 functions as a cofactor of the alkane synthesis complex or participates in JA signaling pathway that contributes to cuticular wax biosynthesis and cutin monomer formation in response to wounding.
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